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Larkin-Ovchinnikov superfluidity in a two-dimensional imbalanced atomic Fermi gas

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posted on 2024-07-11, 08:12 authored by Umberto Toniolo, Brendan Mulkerin, Xiaji LiuXiaji Liu, Hui HuHui Hu
We present an extensive study of two-dimensional Larkin-Ovchinnikov (LO) superfluidity in a spin-imbalanced two-component atomic Fermi gas. In the context of Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) phase, we explore a wide and generic class of pairing gap functions with explicit spatial dependency. The mean-field theory of such phases is applied through the Bogoliubov-de Gennes equations in which the pairing gap can be determined self-consistently. To systematically explore the configuration space we consider both the canonical and grand canonical ensembles where we control the polarization or chemical potentials of the system, respectively. The mean-field calculations enable us to understand the nature of the phase transitions in the fully paired Bardeen-Cooper-Schrieffer (BCS) state, exotic LO phase, and partially polarized free Fermi gas (NPP). The order of the phase transitions has been examined and, in particular, we find a weak first-order phase transition between the exotic inhomogeneous LO phase and the BCS phase. In comparison to the three-dimensional case, where the phase diagram is dominated by a generic separation phase, we predict a broader parameter space for the spatially inhomogeneous LO phase. By computing the superfluid density of the LO phase at different polarization, we show how the superfluidity of the system is suppressed with increasing spin polarization.

Funding

ARC | DP140100637

ARC | FT140100003

ARC | FT130100815

ARC | DP140103231

Spin-orbit coupled quantum gases: understanding new generation materials with topological order : Australian Research Council (ARC) | DP140103231

Imbalanced superfluidity with cold atoms: a new way to understand unconventional superconductors and stellar superfluids : Australian Research Council (ARC) | FT130100815

Strongly repulsive ultracold atomic gases as a resource for quantum simulation : Australian Research Council (ARC) | DP140100637

Finding the lost particle: Majorana fermions in ultracold atoms : Australian Research Council (ARC) | FT140100003

History

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PDF (Published version)

ISSN

1094-1622

Journal title

Physical Review A

Volume

95

Issue

1

Article number

article no. 013603

Pagination

013603-

Publisher

American Physical Society

Copyright statement

Copyright ©2017 American Physical Society. The published version is reproduced here in accordance with the copyright policy of the publisher.

Language

eng

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